CN220450432U - Scarf tassel knotting device - Google Patents

Scarf tassel knotting device Download PDF

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Publication number
CN220450432U
CN220450432U CN202321793414.5U CN202321793414U CN220450432U CN 220450432 U CN220450432 U CN 220450432U CN 202321793414 U CN202321793414 U CN 202321793414U CN 220450432 U CN220450432 U CN 220450432U
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CN
China
Prior art keywords
scarf
knotting
tassel
cylinder
transmission
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CN202321793414.5U
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Chinese (zh)
Inventor
宋生凤
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Tonglu Boyousi Knitting And Weaving Co ltd
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Tonglu Boyousi Knitting And Weaving Co ltd
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Abstract

The utility model discloses a scarf tassel knotting device which comprises a device main body, a transmission mechanism, a paving mechanism, a shearing mechanism, a knotting mechanism and other parts, wherein a feed inlet and a discharge outlet are arranged on two sides in the device main body, the transmission mechanism is arranged between the feed inlet and the discharge outlet and is divided into two sections, the two sections are respectively provided with an independent transmission motor, the transmission motor is connected with a transmission belt through a motor shaft to drive the transmission mechanism to operate, the paving mechanism is arranged between the two sections of the transmission mechanism, the paving mechanism is driven by a cylinder, a supporting piece is fixedly arranged on the cylinder, a pressing plate is fixedly arranged at the lower end of the supporting piece, the shearing mechanism is provided with a driving motor, the driving motor is connected with a driving rod in a sliding mode, two groups of knotting mechanisms are symmetrically integrated on the driving rod, and cutting edges are arranged between the two groups of knotting mechanisms. The utility model can improve the quality and efficiency of scarf production and simultaneously meets the requirement of sustainable development.

Description

Scarf tassel knotting device
Technical Field
The utility model relates to the field of automatic industrial equipment, in particular to a scarf tassel knotting device.
Background
A scarf tassel knotting device is a mechanical device for beating tassels on soft materials such as scarf and the like.
The conventional scarf tassel knotting device has the following problems: firstly, because the scarves are knotted manually one by one, the process is complex in procedure, long in operation period and easy to cause errors, and requires high skills and experience of staff, so that a great deal of time and manpower resources are wasted. Secondly, the scarf tassel knotting is fine and alive, and errors exist in manual operation, so that the knotting quality is difficult to achieve perfect, and particularly, the requirement of customers cannot be met for mass production orders with large volume. In addition, the traditional scarf tassel knotting adopts manual operation, and the scarf tassel knotting is in direct contact with materials in the operation process, so that safety accidents are easy to cause. Although some auxiliary means exist in the mechanized equipment, because of the wide variety of shapes of the knitting wool fabric carpets, each end needs to be knotted and treated uniformly, and the requirement of full automation cannot be met. In addition, the conventional scarf, the tassel and the knot are tied by a large amount of manual operation, so that more waste materials are often generated, and a large amount of resources are wasted. Finally, because the manufacturing process is complex, a great amount of pollution is generated after manual production and processing, and the environment is greatly threatened, so that the sustainable development is extremely unfavorable.
Disclosure of Invention
The utility model aims to overcome the defects in the prior art, and provides the scarf tassel knotting device which is reasonable in structural design and capable of realizing automatic production and processing.
The utility model solves the problems by adopting the following technical scheme: the utility model provides a scarf tassel knotting device, includes equipment main part, transport mechanism, spreading mechanism, shearing mechanism, knotting mechanism, both sides are provided with feed inlet and discharge gate in the equipment main part, feed inlet and discharge gate between be provided with transport mechanism, transport mechanism divide into two sections, two sections respectively are provided with independent transmission motor, transport motor pass through motor shaft connection transmission belt drive transport mechanism operation, transport mechanism two sections between be provided with spreading mechanism, spreading mechanism is driven by the cylinder, cylinder fixed mounting have support piece, support piece lower extreme fixedly provided with clamp plate, the clamp plate rear side set up shearing mechanism, shearing mechanism be provided with driving motor, driving motor sliding connection actuating lever, the actuating lever on symmetry integration have two sets of knotting mechanism, two sets of knotting mechanism between be provided with the cutting edge.
Further: the transmission mechanism is fixedly arranged in the equipment main body through a transmission motor, the workbench is fixedly supported by the lower Fang Duo supports, the supports are fixedly connected to the base, two groups of press roller seats are arranged on the workbench, and the press roller seats are slidably connected with press rollers.
Further: the driving rod is internally provided with a driving motor, a plurality of groups of mounting holes with rack structures are arranged between the driving rods, and the mounting holes are meshed through gears to mount two groups of knotting mechanisms.
Further: the utility model discloses a leveling mechanism, including device, cylinder, support piece, clamp plate, rack, leveling mechanism, rack and pinion rack, the cylinder connect in the device top, the cylinder below be provided with support piece, support piece below fixedly connected with clamp plate, the clamp plate below closely arranges there is the spherical arch of multiunit, slides on the support plate face under the clamp plate and is provided with the sawtooth board, the sawtooth board on evenly distributed have the sawtooth staggered arrangement of equidimension.
Further: the support piece include backup pad and bracing piece, backup pad top and cylinder movable section connect fixedly, backup pad below fixed symmetry install four bracing pieces, the bracing piece below is fixed with the clamp plate.
Further: the dust collection device is characterized in that a dust collection opening is arranged below the device main body, and the lower part of the dust collection opening is connected with dry dust collection equipment through an air duct.
Further: the front of the equipment main body is also provided with a movable protective door.
Compared with the prior art, the utility model has the following advantages and effects:
the production efficiency is high, and the same time and manpower resources can obtain higher output; the machine error is reduced, and the product quality and consistency are improved; and the automatic production can not only ensure personnel safety, but also remarkably reduce the problems of pollution, energy consumption, waste amount and the like. Therefore, the adoption of the automatic tassel knotting equipment can improve the quality and the efficiency of scarf production, and simultaneously meets the requirement of sustainable development.
Drawings
FIG. 1 is a schematic view showing an external structure of a scarf-tassel knotting apparatus according to an embodiment of the utility model.
FIG. 2 is a front view showing the construction of a scarf-tassel knotting apparatus according to an embodiment of the utility model.
FIG. 3 is a top view of a scarf-tassel knotting apparatus according to an embodiment of the utility model.
FIG. 4 is a schematic view of a shearing mechanism according to an embodiment of the present utility model
FIG. 5 is a side cross-sectional view of a scarf-tassel knotting apparatus of an embodiment of the utility model.
Fig. 6 is a schematic diagram of the operation of the paving mechanism according to an embodiment of the present utility model.
FIG. 7 is a schematic view of a knotting mechanism in accordance with an embodiment of the present utility model.
FIG. 8 is a schematic diagram of a knotting mechanism in accordance with an embodiment of the present utility model.
Figure number: the device comprises a device body 1, a feed inlet 101, a discharge outlet 102, a protective door 103, a control cabinet 104, a base 2, a bracket 3, a workbench 4, a transmission mechanism 6, a transmission motor 601, a transmission belt 602, a press roller seat 603, a press roller 604, a shearing mechanism 7, a driving motor 701, a driving rod 702, a cutting blade 703, a top seat 8, a leveling mechanism 9, an air cylinder 901, a supporting member 902, a pressing plate 903, a toothed plate 904, a dust collection opening 10, an air duct 11, a dry dust collection device 12, a knotting mechanism 13, a frame 1301, a knotting arm 1302, a knotting hook 1303, a wearing part 1304 and a steel belt clip 1305.
Detailed Description
The present utility model will be described in further detail by way of examples with reference to the accompanying drawings, which are illustrative of the present utility model and not limited to the following examples.
Referring to fig. 1-8, the scarf tassel knotting device comprises a device main body 1, a transmission mechanism 6, a spreading mechanism 9, a shearing mechanism 7 and a knotting mechanism 13, wherein a feed inlet 101 and a discharge outlet 102 are arranged on two sides in the device main body 1, the transmission mechanism 6 is arranged between the feed inlet 101 and the discharge outlet 102, the transmission mechanism 6 is divided into two sections, each section is provided with an independent transmission motor 601, the transmission motor 601 is connected with a transmission belt 602 through a motor shaft to drive the transmission mechanism 6 to operate, the spreading mechanism 9 is arranged between the two sections of the transmission mechanism 6, the spreading mechanism 9 is driven by an air cylinder 901, the air cylinder 901 is fixedly provided with a supporting piece 902, the lower end of the supporting piece 902 is fixedly provided with a pressing plate 903, the shearing mechanism 7 is arranged on the rear side of the pressing plate 903, the shearing mechanism 7 is provided with a driving motor 701, the driving motor 701 is connected with a driving rod 702 in a sliding manner, two groups of knotting mechanisms 13 are symmetrically integrated on the driving rod 702, and a cutting edge 703 is arranged between the two groups of knotting mechanisms 13.
By arranging the transmission mechanism 6, the scarf can be automatically sent from the feed inlet 101 to the discharge outlet 102, and the treatment of paving, shearing and knotting can be performed on the way, so that the automatic production and processing can be realized. The transmission mechanism 6 is divided into two sections, and is respectively provided with an independent transmission motor 601, so that the transmission speed and direction are adjusted according to different processing steps, and the processing quality and effect are ensured. The spreading mechanism 9 is used for stranding and spreading the reserved weft yarn part on the scarf to form rope-shaped tassels, and a shearing mechanism 7 is arranged at the rear side of the pressing plate 903, so that the rope-shaped tassels can be cut to form uniform and unified lengths. The knotting mechanism 13 winds rope-shaped tassels together to form a uniform knot, and the cutting edge 703 is arranged between the two groups of knotting mechanisms 13, so that redundant rope-shaped tassels can be cut off, and the attractive appearance and stability of the knot are improved.
The transmission mechanism 6 is fixedly arranged inside the equipment main body 1 through the transmission motor 601, so that the stability and the reliability of the transmission mechanism 6 are ensured, and the quality and the effect of processing are prevented from being influenced by loosening or shifting of the transmission mechanism 6. The workbench 4 is fixedly supported by the lower Fang Duo supports 3, so that the bearing capacity and shock resistance of the workbench 4 are enhanced, and the influence on the quality and effect of treatment caused by deformation or damage of the workbench 4 is avoided. The bracket 3 is fixedly connected to the base 2, so that the equipment main body 1 is firmer and more stable, and the influence on the quality and effect of treatment caused by the movement or inclination of the equipment main body 1 is avoided. The two groups of roller holders 603 are arranged on the workbench 4, so that the conveyor belt 602 is kept flat and tensioned between the two sections of conveying mechanisms 6, and the quality and effect of treatment are prevented from being influenced by looseness or wrinkles of the conveyor belt 602. The press roller seat 603 is slidably connected with a press roller 604, so that the press roller 604 can automatically adjust according to scarves with different thicknesses, and the influence on the quality and effect of treatment caused by overlarge or undersize gaps between the press roller 604 and the scarves is avoided.
The transmission mechanism 6 is fixedly arranged in the equipment main body 1 through a transmission motor 601, the workbench 4 is fixedly supported by the lower Fang Duo supports 3, the supports 3 are fixedly connected to the base 2, two groups of press roller seats 603 are arranged on the workbench 4, and the press roller seats 603 are slidably connected with press rollers 604. The stability and reliability of the transmission mechanism 6 can be ensured by fixing the transmission motor 601 inside the apparatus main body 1, and the quality and effect of the processing are prevented from being affected by loosening or shifting of the transmission mechanism 6. The workbench 4 is fixedly supported by the lower Fang Duo brackets 3, so that the bearing capacity and shock resistance of the workbench 4 can be enhanced, and the quality and effect of treatment are prevented from being influenced by deformation or damage of the workbench 4. The device body 1 can be firmer and more stable by fixedly connecting the bracket 3 to the base 2, and the quality and effect of treatment are prevented from being influenced by the movement or inclination of the device body 1. By providing two sets of roller holders 603 on the table 4, the conveyor belt 602 can be kept flat and tensioned between the two conveyor mechanisms 6, avoiding affecting the quality and effect of the treatment due to slackening or creasing of the conveyor belt 602. The press roller seat 603 is slidably connected with the press roller 604, so that the press roller 604 can automatically adjust according to scarves with different thicknesses, and the influence on the quality and effect of treatment caused by overlarge or undersize gaps between the press roller 604 and the scarves is avoided.
The spreading mechanism 9 is connected to the inner top of the device through an air cylinder 901, a supporting piece 902 is arranged below the air cylinder 901, a pressing plate 903 is fixedly connected below the supporting piece 902, a plurality of groups of spherical protrusions are closely arranged below the pressing plate 903, a sawtooth plate 904 is slidably arranged on a supporting plate surface right below the pressing plate 903, and sawtooth staggered arrangement with different sizes is uniformly distributed on the sawtooth plate 904. The weft yarn portions on the scarf can be stranded, laid flat, cut and rope-like tassels by means of a platen 903 and a serrated plate 904 driven by a cylinder 901. Therefore, the aesthetic property and the quality of the scarf can be improved, the labor and the time are saved, and the automatic production and processing are realized.
The support 902 comprises a support plate and support rods, the upper part of the support plate is fixedly connected with the movable section of the air cylinder 901, four support rods are symmetrically and fixedly arranged below the support plate, and a pressing plate 903 is fixedly arranged below the support rods. The support plate is fixedly connected with the movable section of the air cylinder 901, so that up-and-down movement and control are realized, and the flexibility and efficiency of the support 902 are improved. Four support rods are fixedly and symmetrically arranged below the support plate, so that the press plate 903 is supported more stably, and the accuracy and stability of the support 902 are improved. The pressing plate 903 is fixed below the supporting rod, so that the weft yarn part on the scarf is stably and accurately pressed, and the accuracy and stability of the pressing plate 903 are improved.
The working principle of the utility model is as follows:
first, the movable protective door 103 is opened on the front surface of the apparatus main body 1, and the switch on the control cabinet 104 is opened to energize the apparatus main body 1. A scarf is then placed at the inlet 101 and the reserved weft yarn portions of the scarf are placed on the conveyor 602. Next, the first stage conveyor motor 601 is activated, causing the conveyor belt 602 to feed the scarf forward. When the scarf reaches the laying mechanism 9, the cylinder 901 pushes the support 902 down and presses the presser plate 903 against the weft yarn portion on the scarf. A plurality of groups of rubber protrusions are closely arranged below the pressing plate 903, so that the weft yarn portions can be split and laid flat. At the same time, the serrated plate 904 also descends with the presser plate 903 and cuts the weft yarn portion below the presser plate 903. The saw teeth 904 are uniformly distributed with saw teeth of different sizes staggered to make appropriate cuts based on weft yarns of different thicknesses. The cut weft yarn portions form rope-like tassels.
Next, the second stage conveyor motor 601 is activated, causing the conveyor belt 602 to continue feeding the scarf forward. When the scarf reaches the shearing mechanism 7, the driving motor 701 drives the driving rod 702 to move left and right, and drives the two groups of knotting mechanisms 13 to work synchronously. Each set of knotting mechanisms 13 includes a chassis 1301, a knotting arm 1302, a knotting hook 1303, a wear part 1304, and a steel strap clip. The knotting arm 1302 is mounted to the drive rod 702 via a gear engagement and swings as the drive rod 702 moves. The knotting hook 1303 is fixedly installed at the lower end of the knotting arm 1302, and is used to grasp one end of the rope-shaped tassel. The wearing part 1304 is provided above the knotting hook 1303 and serves to protect the knotting hook 1303 from being worn by the rope-shaped tassel. A band clamp is provided at the upper end of the knotting arm 1302 and is used to clamp the other end of the rope tassel. When the knotting arm 1302 swings, the knotting hook 1303 and the steel clip cooperate to wind the two ends of the rope-shaped tassel together and form a uniform and unified knot. At the same time, the cutting blade 703 moves up and down along with the movement of the driving rod 702, and cuts off the surplus rope-shaped tassel after the knotting is completed.
Finally, when the scarf reaches the discharge hole 102, the scarf can be taken out and the next scarf is processed. In the whole process, the dust collection port 10 is connected with the dry dust collection equipment 12 through the air duct 11, and absorbs and cleans yarn scraps generated in the device, so that the inside of the device is kept clean and sanitary.
The front of the equipment main body is also provided with a movable protective door 103, so that the safety of personnel during operation is ensured.
The foregoing description of the utility model is merely exemplary of the utility model. Those skilled in the art may make various modifications or additions to the described embodiments or substitutions, without departing from the scope of the utility model as defined in the accompanying claims.

Claims (7)

1. A scarf tassel knotting device, which is characterized in that: including equipment main part, transport mechanism, shop's mechanism, shearing mechanism, mechanism of knoing, both sides are provided with feed inlet and discharge gate in the equipment main part, feed inlet and discharge gate between be provided with transport mechanism, transport mechanism divide into two sections, two sections respectively are provided with independent transmission motor, transmission motor pass through the motor shaft and connect transmission belt drive transport mechanism operation, transport mechanism two sections between be provided with the shop's mechanism, the shop's mechanism is driven by the cylinder, cylinder fixed mounting have support piece, support piece lower extreme fixedly provided with clamp plate, the clamp plate rear side set up shearing mechanism, shearing mechanism be provided with driving motor, driving motor sliding connection actuating lever, the actuating lever on symmetrical integration have two sets of mechanisms of knoing, two sets of mechanisms of knoing between be provided with the cutting edge.
2. A scarf-tassel knotting apparatus as claimed in claim 1 wherein: the transmission mechanism is fixedly arranged in the equipment main body through a transmission motor, the workbench is fixedly supported by the lower Fang Duo supports, the supports are fixedly connected to the base, two groups of press roller seats are arranged on the workbench, and the press roller seats are slidably connected with press rollers.
3. A scarf-tassel knotting apparatus as claimed in claim 1 wherein: the driving rod is internally provided with a driving motor, a plurality of groups of mounting holes with rack structures are arranged between the driving rods, and the mounting holes are meshed through gears to mount two groups of knotting mechanisms.
4. A scarf-tassel knotting apparatus as claimed in claim 1 wherein: the utility model discloses a leveling mechanism, including device, cylinder, support piece, clamp plate, rack, leveling mechanism, rack and pinion rack, the cylinder connect in the device top, the cylinder below be provided with support piece, support piece below fixedly connected with clamp plate, the clamp plate below closely arranges there is the spherical arch of multiunit, slides on the support plate face under the clamp plate and is provided with the sawtooth board, the sawtooth board on evenly distributed have the sawtooth staggered arrangement of equidimension.
5. A scarf-tassel knotting apparatus as claimed in claim 4 wherein: the support piece include backup pad and bracing piece, backup pad top and cylinder movable section connect fixedly, backup pad below fixed symmetry install four bracing pieces, the bracing piece below is fixed with the clamp plate.
6. A scarf-tassel knotting apparatus as claimed in claim 1 wherein: the dust collection device is characterized in that a dust collection opening is arranged below the device main body, and the lower part of the dust collection opening is connected with dry dust collection equipment through an air duct.
7. A scarf-tassel knotting apparatus as claimed in claim 1 wherein: the front of the equipment main body is also provided with a movable protective door.
CN202321793414.5U 2023-07-07 2023-07-07 Scarf tassel knotting device Active CN220450432U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321793414.5U CN220450432U (en) 2023-07-07 2023-07-07 Scarf tassel knotting device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321793414.5U CN220450432U (en) 2023-07-07 2023-07-07 Scarf tassel knotting device

Publications (1)

Publication Number Publication Date
CN220450432U true CN220450432U (en) 2024-02-06

Family

ID=89736614

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321793414.5U Active CN220450432U (en) 2023-07-07 2023-07-07 Scarf tassel knotting device

Country Status (1)

Country Link
CN (1) CN220450432U (en)

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